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盲鱼拥有能感知光的细胞。

Blind fish have cells that see light.

机构信息

Department of Marine Biology, James Cook University, Townsville, Queensland 4811, Australia.

Department of Developmental and Cell Biology, University College London, London, WC1E 7HU, UK.

出版信息

Proc Biol Sci. 2023 Jul 12;290(2002):20230981. doi: 10.1098/rspb.2023.0981.

Abstract

Most animals on earth have evolved under daily light-dark cycles and consequently possess a circadian clock which regulates much of their biology, from cellular processes to behaviour. There are however some animals that have invaded dark ecosystems and have adapted to an apparently arrhythmic environment. One such example is the Mexican blind cavefish , a species complex with over 30 different isolated cave types, including the founding surface river fish. These cavefish have evolved numerous fascinating adaptations to the dark, such as loss of eyes, reduced sleep phenotype and alterations in their clock and light biology. While cavefish are an excellent model for studying circadian adaptations to the dark, their rarity and long generational time makes many studies challenging. To overcome these limitations, we established embryonic cell cultures from cavefish strains and assessed their potential as tools for circadian and light experiments. Here, we show that despite originating from animals with no eyes, cavefish cells in culture are directly light responsive and show an endogenous circadian rhythm, albeit that light sensitivity is relatively reduced in cave strain cells. Expression patterns are similar to adult fish, making these cavefish cell lines a useful tool for further circadian and molecular studies.

摘要

地球上大多数动物都是在昼夜节律下进化而来的,因此它们都拥有一个生物钟,生物钟调节着从细胞活动到行为等诸多生物学过程。然而,也有一些动物已经入侵到了黑暗的生态系统,并适应了明显无节奏的环境。例如,墨西哥盲眼洞穴鱼就是一个很好的例子,它是一个拥有 30 多种不同孤立洞穴类型的物种复合体,包括最初的地表河流鱼类。这些洞穴鱼已经进化出了许多适应黑暗的奇妙特征,例如眼睛的丧失、睡眠表型的减少以及生物钟和光生物学的改变。虽然洞穴鱼是研究生物钟对黑暗适应的绝佳模型,但它们的稀有性和较长的世代时间使得许多研究具有挑战性。为了克服这些限制,我们从洞穴鱼种群中建立了胚胎细胞培养,并评估了它们作为生物钟和光实验工具的潜力。在这里,我们表明,尽管源自没有眼睛的动物,培养的洞穴鱼细胞仍然可以直接对光做出反应,并表现出内源性的生物钟节律,尽管洞穴鱼种群的细胞对光的敏感性相对较低。表达模式与成年鱼类相似,这使得这些洞穴鱼细胞系成为进一步进行生物钟和分子研究的有用工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5122/10336380/d586380203f8/rspb20230981f01.jpg

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